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Adsorption and electro-thermal regeneration of VOC onto activated carbon fiber-cloth

Explore lab findings & industrial uses of activated carbon fiber-cloth for VOC removal. Covers physical-chemical-electrical characterizations, adsorption isotherms, electrical heating, pilot units, breakthrough curves, and more. Detailed analysis of neural networks, Ergun's equation, Comiti’s formula, and Carman's approach. Discover the benefits of electrothermal regeneration in industrial settings.

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Adsorption and electro-thermal regeneration of VOC onto activated carbon fiber-cloth

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  1. Adsorption and electro-thermal regeneration of VOC onto activated carbon fiber-cloth P. Le Cloirec, A. Subrenat and B. Boulinguiez 14 Mars 2012

  2. Lab studies Assembler Integration Applications Material

  3. Material Activated carbon textiles Physical – chemical – electrical characterisations Batch adsorption Isotherm equilibrium Electrical heating Choice of material Pilot unit Modelling Flow pattern – Head loss Designing Breakthrough curves-Performances Electrothermal regeneration Industrial applications

  4. Activatedcarbonfibercloth

  5. Experimental data : DP /HU0 = N + M U0 Goodings’ relation (1964): do and dycalculation Neural network : operating conditions, system characteristics Comiti’s equation (1985):  avd Ergun’s equation (1952): k1 k2 (...) Determination of : Sf Sy So Carman’sdimensionlessapproach:  Re’ DP Sousedonly X = avd/S Use of porous media models Use of a statistical tool

  6. PICA Actitex Lab studies Assembler Integration Applications Material

  7. Adsorption and electro-thermal regeneration of VOC onto activated carbon fiber-cloth P. Le Cloirec, A. Subrenat and B. Boulinguiez 14 Mars 2012

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